Microvascular resistance reserve in relation to total and vessel-specific atherosclerotic burden
Masahiro Hoshino1, Ruurt A Jukema1, Roel Hoek1
1Departments of Cardiology, Amsterdam UMC, Vrije Universiteit Amsterdam, De Boelelaan 1117, 1081 HV Amsterdam, The Netherlands.
Insights
In patients without prior coronary artery disease, overall plaque burden, not vessel-specific plaque, was linked to reduced microvascular resistance reserve. This suggests systemic factors influence microcirculatory function in atherosclerosis.
Area of Science:
- Cardiovascular Medicine
- Medical Imaging
- Physiology
Background:
- The interplay between coronary artery atherosclerosis and microvascular resistance is not fully understood.
- Assessing atherosclerotic burden and its impact on microvascular function is crucial for understanding coronary artery disease (CAD).
Purpose of the Study:
- To investigate the relationship between total and vessel-specific atherosclerotic burden and microvascular resistance reserve (MRR).
Main Methods:
- Post hoc analysis of the PACIFIC 1 trial involving symptomatic patients without prior CAD.
- Utilized [15O]H2O positron emission tomography, coronary computed tomography angiography (CCTA), and invasive fractional flow reserve (FFR) for assessment.
- MRR was measured across coronary branches, with CCTA quantifying patient- and vessel-specific plaque volumes (Percentage Atheroma Volume - PAV).
Main Results:
- 142 patients (55% male, mean age 57.5 years) with 426 vessels were analyzed (mean MRR 3.77).
- Higher patient-specific PAV was associated with lower vessel-specific MRR after correcting for cardiovascular risk factors (p=0.018 and p=0.024).
- Vessel-specific PAV was not significantly related to vessel-specific MRR.
Conclusions:
- Patient-specific atherosclerotic burden, but not vessel-specific burden, is negatively associated with MRR in patients without prior CAD.
- Findings suggest that impaired microcirculatory function in the context of atherosclerosis may stem from systemic factors.
Aims:
The relationship between coronary artery atherosclerosis and microvascular resistance remains unclear. This study aims to clarify the relationship between total atherosclerotic and vessel-specific atherosclerotic burden and microvascular resistance reserve (MRR).
Methods And Results:
In this post hoc analysis of the PACIFIC 1 trial, symptomatic patients without prior coronary artery disease (CAD) underwent [15O]H2O positron emission tomography, coronary computed tomography angiography (CCTA), and invasive fractional flow reserve (FFR). MRR was assessed across all three coronary branches, utilizing PET-derived coronary flow reserve and invasive FFR measurements. CCTA was used to assess patient and vessel-specific plaque volumes. Percentage atheroma volume (PAV) was defined as total plaque volume divided by vessel volume. The study included 142 patients (55% male, 57.5 ± 8.6 years) with 426 vessels with a mean MRR of 3.77 ± 1.64. While a significantly higher PAV was observed in the left anterior descending artery territory, MRR was similar across the three coronary branches. Generalized estimating equations without correction for cardiovascular risk factors identified that patient-specific PAV tertiles but not vessel-specific PAV tertiles were related to vessel-specific MRR. After correction for cardiovascular risk factors, compared with the first tertile of patient-specific PAV, the second tertile showed a vessel-specific MRR decrease of β = -0.362, P = 0.018, and the third tertile showed a decrease of β = -0.347, P = 0.024.
Conclusion:
In patients without prior CAD, patient-specific plaque burden was negatively associated to vessel-specific MRR; however, vessel-specific plaque burden was not related to vessel-specific MRR. Our findings suggest that the relation between atherosclerotic burden and an impaired microcirculatory function is of systemic origin.
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